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Waste Segregation Presents Thermal Treatment Opportunities

机译:废物分类带来了热处理机会

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摘要

Developments in national and international waste recycling and reuse programmes have led to the adoption of processes that segregate waste material into several streams. It is not viable to recycle some of these streams but some contain materials such as wood (biomass), contaminated paper (biomass), plastics and textiles that have a greater fuel energy content than the original waste. Furthermore, adding value through pelletisation can provide a convenient form for handling and transportation of this type of fuel. An objective of this investigation is to achieve electrical power generation efficiency greater than that of incinerator boiler/turbines through the generation of an intermediate gaseous fuel for use in a combined cycle. Studies of the pyrolysis process that produces char, oil and gas have demonstrated how the rate of heating influences the proportion of each. Complementary studies of the combustion and gasification characteristics of segregated waste materials, and char derived from them, in special pot 'burners' have shown the effects of composition, form, size, packing and airflow rate on burning and gasification rates. The results demonstrate the validity of a mathematical modelling code for the processes (Flic); when coupled with Fluent, this can then be used in the design and operation of domestic or industrial-scale plants. These investigations have led to the design of a small-scale gasifier that avoids the output of tar using pyrolysis in a bed of hot char. Such units are considered suitable for use with a Stirling engine for efficient combined heat and power (CHP) for individual buildings. An interesting feature of this system is that the overall CHP efficiency is independent of the gasifier efficiency.
机译:国家和国际废物回收和再利用计划的发展导致采用了将废物分为几类的流程。循环利用其中的部分物流是不可行的,但是其中一些包含的木材(生物质),受污染的纸张(生物质),塑料和纺织品等燃料的能量含量要高于原始废物。此外,通过造粒增加价值可以为处理和运输这类燃料提供方便的形式。该研究的目的是通过产生用于联合循环的中间气态燃料来获得比焚化炉/涡轮机更高的发电效率。对产生木炭,石油和天然气的热解过程的研究表明,加热速率如何影响二者的比例。对隔离废物的燃烧和气化特性及其衍生的炭进行的补充研究表明,在特殊的锅“燃烧器”中,其组成,形式,大小,堆积和气流速率对燃烧和气化速率具有影响。结果证明了该过程的数学建模代码的有效性(Flic);当与Fluent结合使用时,可用于家庭或工业规模工厂的设计和运行。这些研究导致了小型气化炉的设计,该气化炉可避免在热炭床中进行热解而产生焦油。这样的单元被认为适合与斯特林发动机一起使用,以实现各个建筑物的高效热电联产(CHP)。该系统的一个有趣特征是,总的CHP效率与气化炉效率无关。

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